BGI-Shenzhen, Shenzhen, China; Department of Biology, University of Copenhagen, Copenhagen, Denmark.
Hum Mutat. 2013 Dec;34(12):1715-20. doi: 10.1002/humu.22439. Epub 2013 Oct 7.
Accurate genotyping is important for genetic testing. Sanger sequencing-based typing is the gold standard for genotyping, but it has been underused, due to its high cost and low throughput. In contrast, short-read sequencing provides inexpensive and high-throughput sequencing, holding great promise for reaching the goal of cost-effective and high-throughput genotyping. However, the short-read length and the paucity of appropriate genotyping methods, pose a major challenge. Here, we present RCHSBT-reliable, cost-effective and high-throughput sequence based typing pipeline-which takes short sequence reads as input, but uses a unique variant calling, haploid sequence assembling algorithm, can accurately genotype with greater effective length per amplicon than even Sanger sequencing reads. The RCHSBT method was tested for the human MHC loci HLA-A, HLA-B, HLA-C, HLA-DQB1, and HLA-DRB1, upon 96 samples using Illumina PE 150 reads. Amplicons as long as 950 bp were readily genotyped, achieving 100% typing concordance between RCHSBT-called genotypes and genotypes previously called by Sanger sequence. Genotyping throughput was increased over 10 times, and cost was reduced over five times, for RCHSBT as compared with Sanger sequence genotyping. We thus demonstrate RCHSBT to be a genotyping method comparable to Sanger sequencing-based typing in quality, while being more cost-effective, and higher throughput.
准确的基因分型对于基因检测很重要。基于 Sanger 测序的分型是基因分型的金标准,但由于其成本高、通量低,因此未得到广泛应用。相比之下,短读测序提供了廉价且高通量的测序,为实现经济高效和高通量基因分型的目标带来了巨大的希望。然而,短读长和缺乏适当的基因分型方法是主要挑战。在这里,我们提出了 RCHSBT-可靠、经济高效和高通量的基于序列的分型管道-它以短序列读长为输入,但使用独特的变异调用、单倍体序列组装算法,可以比 Sanger 测序读长更准确地进行基因分型,每个扩增子的有效长度更大。我们使用 Illumina PE 150 读长对 96 个样本进行了人类 MHC 基因座 HLA-A、HLA-B、HLA-C、HLA-DQB1 和 HLA-DRB1 的 RCHSBT 测试。易于对长达 950bp 的扩增子进行基因分型,RCHSBT 调用的基因型与 Sanger 序列之前调用的基因型之间达到 100%的分型一致性。与 Sanger 序列基因分型相比,RCHSBT 的基因分型通量提高了 10 倍以上,成本降低了 5 倍以上。因此,我们证明 RCHSBT 是一种与 Sanger 测序基因分型质量相当的基因分型方法,同时更具成本效益和更高通量。